Novel anodic aluminum oxide (AAO) nanoporous membrane for wearable hemodialysis device

In this paper a novel structure of AAO membrane is reported. The AAO membrane was fabricated from commercial grade impure aluminum sheet. The fabricated membrane has hexagonal structure and the nanopores appeared at the bottom of that honeycomb structure. The thickness of fabricated membrane is 42.5...

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Main Authors: Ajab Khan Kasi, Jafar Khan Kasi, Nitin Afzulpurkar, Erik Bohez, Adisorn Tuantranont, Banchong Mahaisavariya
Other Authors: Asian Institute of Technology Thailand
Format: Conference or Workshop Item
Published: 2018
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/28995
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spelling th-mahidol.289952018-09-24T15:59:13Z Novel anodic aluminum oxide (AAO) nanoporous membrane for wearable hemodialysis device Ajab Khan Kasi Jafar Khan Kasi Nitin Afzulpurkar Erik Bohez Adisorn Tuantranont Banchong Mahaisavariya Asian Institute of Technology Thailand Thailand National Electronics and Computer Technology Center Mahidol University Computer Science Engineering In this paper a novel structure of AAO membrane is reported. The AAO membrane was fabricated from commercial grade impure aluminum sheet. The fabricated membrane has hexagonal structure and the nanopores appeared at the bottom of that honeycomb structure. The thickness of fabricated membrane is 42.5μm. The average diameter of upper layer pore is 350nm and average diameter of lower layer pore is 50nm. The nanopores inside the fabricated membrane are highly straight and perpendicular to the surface. This two layer AAO membrane will speed up the hemodialysis process. ©2010 IEEE. 2018-09-24T08:56:48Z 2018-09-24T08:56:48Z 2010-12-01 Conference Paper ICCE 2010 - 3rd International Conference on Communications and Electronics. (2010), 98-101 10.1109/ICCE.2010.5670689 2-s2.0-78751521503 https://repository.li.mahidol.ac.th/handle/123456789/28995 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=78751521503&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Computer Science
Engineering
spellingShingle Computer Science
Engineering
Ajab Khan Kasi
Jafar Khan Kasi
Nitin Afzulpurkar
Erik Bohez
Adisorn Tuantranont
Banchong Mahaisavariya
Novel anodic aluminum oxide (AAO) nanoporous membrane for wearable hemodialysis device
description In this paper a novel structure of AAO membrane is reported. The AAO membrane was fabricated from commercial grade impure aluminum sheet. The fabricated membrane has hexagonal structure and the nanopores appeared at the bottom of that honeycomb structure. The thickness of fabricated membrane is 42.5μm. The average diameter of upper layer pore is 350nm and average diameter of lower layer pore is 50nm. The nanopores inside the fabricated membrane are highly straight and perpendicular to the surface. This two layer AAO membrane will speed up the hemodialysis process. ©2010 IEEE.
author2 Asian Institute of Technology Thailand
author_facet Asian Institute of Technology Thailand
Ajab Khan Kasi
Jafar Khan Kasi
Nitin Afzulpurkar
Erik Bohez
Adisorn Tuantranont
Banchong Mahaisavariya
format Conference or Workshop Item
author Ajab Khan Kasi
Jafar Khan Kasi
Nitin Afzulpurkar
Erik Bohez
Adisorn Tuantranont
Banchong Mahaisavariya
author_sort Ajab Khan Kasi
title Novel anodic aluminum oxide (AAO) nanoporous membrane for wearable hemodialysis device
title_short Novel anodic aluminum oxide (AAO) nanoporous membrane for wearable hemodialysis device
title_full Novel anodic aluminum oxide (AAO) nanoporous membrane for wearable hemodialysis device
title_fullStr Novel anodic aluminum oxide (AAO) nanoporous membrane for wearable hemodialysis device
title_full_unstemmed Novel anodic aluminum oxide (AAO) nanoporous membrane for wearable hemodialysis device
title_sort novel anodic aluminum oxide (aao) nanoporous membrane for wearable hemodialysis device
publishDate 2018
url https://repository.li.mahidol.ac.th/handle/123456789/28995
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